Electric toothbrush
Summary by NHIP
Electric Toothbrush with Dual Switches
The electric toothbrush features a hollow body containing a motor and battery that drives a moving head portion. A first switch enables momentary operation while packaged, whereas a second switch allows continuous operation only after removal.
Claim Score by NHIP
Abstract
An electric toothbrush includes a head having a moving portion, a handle, and shaft between the head and the handle. A body portion is hollow and further includes a motor operative to generate motion for driving the moving portion. A battery is located within the hollow section for powering the motor. A first switch, operatively connected to the motor provides momentary operation of the toothbrush. Optionally, a second switch provides for continuous operation of the toothbrush. The first switch can be operated while the toothbrush is in a toothbrush package, such as, for example, a plastic blister pack. A consumer can momentarily observe the operation of the toothbrush before purchasing the toothbrush. The consumer cannot operate the second switch and is thereby prevented from leaving the toothbrush in a battery draining operational mode for extended periods of time.

Term
Term ended
Expired 30 September 2018, 8 years ago.
- Priority
- Filed
- Granted
- Expired
- Today
28 claims: 4 independent, 24 dependent
- 1An electric toothbrush comprising:packaging for containing the toothbrush;a body portion having a first end, and a hollow portion;a head located at said first end, wherein said head includes a moving portion, wherein said moving portion comprises at least one of bristles and massaging tips;a motor located within said hollow portion of said body portion, said motor operative to generate motion for driving the moving portion;a first switch which is operably connected to said motor, wherein said switch can be actuated in a first manner to provide momentary operation of said toothbrush even when said toothbrush is within said packaging and a second switch actuated in a second manner to provide continuous operation of said toothbrush when said toothbrush is removed from said packaging.
- 9Broadest claimClaim Score 71, broad(NHIP)An electric toothbrush operative to aid a user in cleaning teeth, the electric toothbrush comprising:an elongated body having a handle portion, and a moving portion;a motor disposed in the handle portion and operative to drive the moving portion;a first switch operative to connect the motor to a power source only while the switch is held in a closed position by the user and a second switch operative to connect the motor to a power source when the second switch is placed in a closed position, the second switch further operative to remain in the closed position even after the switch is released by the user.
- 23An electric toothbrush comprising:an elongated body portion having opposed first and second ends, a hollow portion and a longitudinal axis;a head attached to said first end;a moving portion within the head;a motor located within said hollow portion of said elongated body portion;a momentary switch and a non-momentary switch, both operative to connect the motor to a power source;a gear located in said hollow portion, wherein said motor is operatively connected to said gear;a plurality of swivel arms, wherein one swivel arm is pivotably connected to said gear;and a shaft operatively connected to the one swivel arm and disposed for translating movement in a back and forth manner to the moving portion.
- 24An electric toothbrush comprising:an elongated body portion having opposed first and second ends, a hollow portion and a longitudinal axis;a head attached to said first end;a motor located within said hollow portion of said elongated body portion;a momentary switch and a non-momentary switch, both operative to connect the motor to a power source;a first gear and a second gear located in said hollow portion, wherein said motor is operatively connected to said first gear, and said first gear is connected to said second gear;first, second and third swivel arms, wherein said first swivel arm is connected to said second gear, said second swivel arm is pivotably connected to said first swivel arm, and said third swivel arm moves in a back and forth manner generally along said longitudinal axis;and a shaft operatively connected to said second swivel arm at a shaft first end and operatively connected to said third swivel arm at a shaft second end;wherein said head further comprises static massaging tips and a moving portion, wherein said third swivel arm is connected to said moving portion.
Independent claims4
69 paragraphs in 4 sections, as filed
This application is a continuation-in-part of application Ser. No. 09/710,616, filed on Nov. 9, 2000, which issued as U.S. Pat. No. 6,371,294 on Apr. 16, 2002, which is a continuation-in-part of application Ser. No. 09/382,745, filed on Aug. 25, 1999, which issued as U.S. Pat. No. 6,178,579 on Jan. 30, 2001, and which is a continuation-in-part of application Ser. No. 09/236,794, filed Jan. 25, 1999, which issued as U.S. Pat. No. 6,189,693 on Feb. 20, 2001, and which is a continuation-in-part of application Ser. No. 09/163,621, filed on Sep. 30, 1998, which issued as U.S. Pat. No. 6,000,083 on Dec. 14, 1999.
BACKGROUND OF THE INVENTION
The present invention relates generally to electric toothbrushes. More particularly, it relates to an improved battery powered toothbrush.
The benefits of brushing one's teeth using motorized toothbrushes are well known, and motorized movement in toothbrushes has been the subject of much recent innovation and design activity. Also, the commercial market has seen the introduction, over the last several years, of many different types of motorized toothbrushes. However, an examination of the available technology shows a tendency toward increasingly complex, expensive, and non-commercially feasible methods of achieving motorized motions in the bristles and heads of toothbrushes to aid in more effectively cleaning one's teeth.
The commercial marketplace has become divided into two price markets. On the higher priced end are some of these more complex motorized toothbrushes that provide various motions to the bristles and brush head. The lower end of the market has become the province of very simple motorized toothbrushes that only vibrate through the use of an offset weight attached to the motor shaft, and which provide very little true additional cleaning benefit with their use, since no vigorous motion is transmitted to the cleaning surface of the brush. The vibrations are also very uncomfortable to the hand and act as a disincentive to brush one's teeth for an adequate time.
Numerous electric toothbrushes have been developed over the years. Some known devices are shown in U.S. Pat. Nos. 5,070,567; 5,186,627; 5,274,870; 5,341,534; 5,378,153; and 5,732,433. None of these toothbrushes provides a low cost/hygienic means for a customer to try the toothbrush before making a toothbrush purchase. Allowing a customer to observe the operation of a motorized toothbrush, feel the level of vibration, and hear the sound of the toothbrush is a powerful mechanism for communicating the usefulness and convenience of the toothbrush. Accordingly it has been considered desirable to develop an electric toothbrush which overcomes difficulties of prior art toothbrushes and provides a means for a customer to try the toothbrush without removing the toothbrush from its package and even before purchasing the toothbrush.
SUMMARY OF THE INVENTION
To those ends a new electric toothbrush has been developed. The new electric toothbrush comprises packaging for containing the toothbrush, and a body portion having a first end and a hollow portion. A head located at the first end includes a moving portion, the moving portion comprises at least one of bristles and massaging tips. A motor located within the hollow portion of the body portion is operative to generate motion for driving the moving portion. A first switch is operably connected to the motor. The first switch can be actuated in a first manner to provide momentary operation of the toothbrush even when the toothbrush is inside the packaging.
In some embodiments the first switch is depressed to provide the momentary operation. For example, in some embodiments, the first switch is a push button.
In some embodiments, the toothbrush further comprises a second switch, which is actuated in a second manner, to provide continuous operation of the toothbrush when the toothbrush is removed from the packaging. For example, in some embodiments, the second switch is a slide switch, a toggle switch, an alternate acting pushbutton switch, a rotary switch, electronic switch or any other switch that provides a continuous or non-momentary contact closure.
One advantage of the present invention is the provision of an electric toothbrush with a switch which allows momentary operation of the toothbrush while the toothbrush is inside sealed factory packaging.
Another advantage of the present invention is the provision of an electric toothbrush which is inexpensive and easy to manufacture.
Still another advantage of the present invention is the provision of an electric toothbrush with moving portion that rotates, swivels, oscillates or reciprocates.
Yet another advantage of the present invention is the provision of a circular portion that rotates, reciprocates, swivels, or oscillates which is positioned at the end of the brush head to facilitate easier access to the back of the user's mouth.
Still other advantages and benefits of the invention will become apparent to those skilled in the art upon a reading and understanding of the following detailed description.
BRIEF DESCRIPTION OF THE DRAWINGS
The invention may take physical form in certain parts and arrangements of parts, preferred embodiments of which will be described in detail in this specification and illustrated in the accompanying drawings which form a part hereof, and wherein:
FIG. 1 is a top perspective view of a first electric toothbrush, the first electric toothbrush including a switch providing a combination of momentary and non-momentary switching features;
FIG. 2 is a side elevation of the first toothbrush showing details of one toothbrush head embodiment;
FIG. 3 is a bottom elevational view of the first electric toothbrush;
FIG. 4 is a side elevational view in cross section of the one embodiment of the first electric toothbrush;
FIG. 5 is a perspective view of a second electric toothbrush, the second electric toothbrush including a switching circuit including a first switch or switching member operative to providing a momentary switching function and a second switch or switching member operative to provide a non-momentary switching feature;
FIG. 6 is a perspective view of a third electric toothbrush, the third electric toothbrush including a switching circuit including a third switch or switching member operative to providing a momentary switching function and a fourth switch or switching member operative to provide a non-momentary switching feature;
FIG. 7 is a front and side elevational view of an electric toothbrush in packaging;
FIG. 8 is a perspective view of a fourth toothbrush showing details of an exemplary motor, driving means and moving portion.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
Referring now to the drawings wherein the showings are for the purposes of illustrating the preferred embodiments of the invention only and not for purposes of limiting same, FIG. 1 shows an first electric toothbrush A. The electric toothbrush can be used for personal hygiene such as brushing one's teeth and gums.
As shown in FIG. 1, the electric toothbrush includes an body portion <b>10</b>, which has a first end <b>12</b> and a second end <b>14</b>. A head <b>16</b> is located at the first end <b>12</b> and a handle <b>18</b> is located at the second end <b>14</b>.
The exemplary head <b>16</b> has a more traditional larger brush head shape which permits the user to brush his teeth in the typical manner of an up and down fashion. As shown on FIG. 2, the length of the head <b>16</b>, dimension “X”, can range from about 0.75 inches to about 1.75 inches. The thickness of the brush head, dimension “Y”, can range from about 0.25 inches to about 0.50 inches. The design of the head <b>16</b> allows for inexpensive manufacture and assists in bringing effective motorized rotational toothbrushes within the financial reach of a large portion of the population. However, other head designs can be used and still remain within the scope of aspects of the invention.
Referring now to FIG. 3, the exemplary head <b>16</b> further includes a longitudinal axis <b>19</b>, an exemplary moving portion or brush head <b>20</b> and an optional static portion or brush head <b>22</b>. The static portion <b>22</b> is located on opposite sides of the moving portion <b>20</b>. The exemplary moving portion <b>20</b> is located at the center of the brush head <b>16</b>. The exemplary moving portion <b>20</b> rotates, swivels, oscillates or reciprocates about an axis approximately normal to the longitudinal axis <b>19</b> of the brush head <b>16</b>. However, other head motions are known in the art. The exemplary moving portion <b>20</b> may rotate continuously in a clockwise or counter clockwise direction or partially rotate, oscillate, or reciprocate in a back and forth manner. Alternatively, the exemplary moving portion <b>20</b> moves in some other manner. For example, U.S. Pat. No. 5,226,206 to Davidovitz et al. discloses a toothbrush with combined longitudinal reciprocation and circular rotation or oscillation. U.S. Pat. No. 5,524,312 to Tan et al. discloses a toothbrush with a first moving portion moving in a wiping motion described as oscillation in a transverse direction and a second moving portion that moves round about its own center. U.S. Pat. No. 5,070,567 to Holland discloses a toothbrush with a combined rotational and revolving motions. U.S. Pat. No. 5,253,382 to Beny discloses a toothbrush with combined longitudinal and transverse motions resulting in a figure eight type brush movement. In addition to the motions disclosed herein, any known moving portion motion may be incorporated and still remain within the scope of aspects of the invention.
The exemplary moving portion <b>20</b> includes stiff bristles <b>24</b>. The optional static portion <b>22</b> includes soft bristles <b>26</b>. The stiff bristles <b>24</b> are slightly recessed with respect to the soft bristles <b>26</b>. The stiff bristles <b>24</b> aid in the deep cleaning and plaque removal process, while the stationary soft bristles <b>26</b> are softer so as to not damage the gums. The thickness of the bristles, dimension “Z”, shown in FIG. 2, can range from about 0.25 inches to about 0.75 inches. Again, other bristle arrangements may be used and still remain within the scope of aspects of the invention.
Referring again to FIG. 3, the body portion <b>10</b> further includes an angled shaft <b>28</b>, located between the head <b>16</b> and the handle <b>18</b>. The angled shaft <b>28</b> provides an ergonomic benefit that has not been utilized on a motorized toothbrush. The angle is well known for its ergonomic benefit in permitting easier access into the back recesses of the mouth while still contacting the tooth surface.
As shown in FIG. 4 the elongated body portion <b>10</b> further includes a hollow portion <b>30</b> which houses a motor <b>32</b>. The motor <b>32</b> has a longitudinal axis <b>34</b> in line with a longitudinal axis <b>36</b> of the elongated body portion <b>10</b>. However, other motor arrangements may be used and still remain within the scope of aspects of the invention.
The motor <b>32</b> generates motion for driving the moving portion <b>20</b>. Optionally, the moving portion <b>20</b> is driven through a driving means. For example, motion generated by the motor <b>32</b> is delivered to the moving portion <b>20</b> to move, rotate, oscillate or reciprocate through a driving means including a worm gear <b>40</b> and a pair of step gears <b>42</b>, <b>43</b>. The motor <b>32</b> is operatively connected to the worm gear <b>40</b>. Step gear <b>42</b> is operatively connected to step gear <b>43</b> and the worm gear <b>40</b>.
As shown in FIG. 4, the first step gear <b>42</b> permits the matching second step gear <b>43</b> to be offset with respect to the longitudinal axis <b>36</b> of the elongated body portion <b>10</b>.
As shown in FIG. 4, the exemplary driving means further includes a shaft <b>44</b> that is connected at a first end to the offset step gear <b>43</b> and at a second end to the moving portion <b>20</b>. The second step gear <b>43</b> is placed at a desired angle so that the shaft <b>44</b> itself can still be straight, thus losing no power or torque through the added function of a flexible shaft.
However, other driving means can be used. For example, U.S. Pat. No. 4,827,550 Graham et al. discloses a toothbrush having a reciprocating rack for driving a plurality of geared brush heads in a rotational oscillatory manner. U.S. Pat. No. 3,242,516 to H. Cantor discloses a toothbrush having conical drive gears, pulleys and a belt for rotating a moving portion. U.S. Pat. No. 5,617,601 to McDougall discloses a toothbrush having a reciprocating flexible member for driving a moving portion in a rotational or oscillatory manner. U.S. Pat. No. 5,226,206 to Davidovitz et al. discloses a toothbrush with a reciprocating shaft and a carrier member. The carrier member carries a geared brush head. The geared brush head is in meshed engagement with a stationary rack element. As the shafted reciprocates, the brush head reciprocates. Additionally, due to the meshed engagement with the rack element, the brush head also rotates. In addition to the driving means disclosed herein, any known driving means can be used and stay within the scope of aspects of the invention.
A switch <b>50</b> is provided to control operation of the electric toothbrush and is operatively connected to the motor <b>32</b>. For example, the switch <b>50</b> includes a molded actuator button <b>52</b> and a metal contact <b>54</b> disposed within aperture <b>56</b>. In a momentary mode of operation, the switch <b>50</b> is manually depressed by pressing a molded actuator button <b>52</b> down, which then presses against a metal contact <b>54</b>, which completes the circuit and provides momentary operation of the toothbrush. The switch <b>50</b> also allows continuous mode of operation through a ramp design. Sliding the button <b>52</b> forward toward the head <b>16</b> provides for continuous operation. A selected shape of the button combined with a molded or stamped in ramp <b>58</b> in the metal contact <b>54</b>, causes forward movement of the button <b>52</b> to move the contact <b>54</b> downward, thereby completing the circuit. The toothbrush then continuously operates until the button <b>52</b> is slid back into an off position toward the handle <b>18</b> and the button <b>52</b> disengages the metal contact <b>54</b>.
By providing the momentary function, the toothbrush can be packaged in packaging as shown in FIG. 7 where the consumer can depress the button <b>52</b> through the packaging and see, feel and hear its operation while the toothbrush is still inside the packaging. When the toothbrush is purchased and removed from the package the consumer is able to us the non-momentary, continuous mode, or ramp design function to operate the toothbrush in a continuous manner. FIG. 7 illustrates one version of the button <b>52</b>. By testing the operation of the toothbrush in this manner, the consumer can easily evaluate the quality of the toothbrush. For example, the consumer can evaluate the quietness of the operation of the toothbrush. The consumer can determine that the vibration of the toothbrush is not uncomfortable. The consumer can sense the strength or torque behind the brushing action and the consumer can verify that batteries installed in the toothbrush are fully charged. It should be noted, as detailed below, that other sizes and shapes of buttons as well as functional configurations may be used.
Referring again to FIG. 4, a battery <b>60</b> is provided within the hollow portion <b>30</b> of the elongated body portion <b>10</b>. A battery terminal or contact <b>62</b> is provided for the battery <b>60</b>. An AA size battery can be used as is illustrated in FIG. <b>4</b>. To install the battery <b>60</b> into the hollow portion <b>30</b>, a slidable snap-on cover <b>64</b> is depressed and slid off the end of the handle <b>18</b> to expose the hollow portion <b>30</b>. The battery <b>60</b> is inserted, then the cover <b>64</b> is slid back on to the housing and snapped into place. The terminal end of the battery <b>60</b> is then in contact with the metal contact <b>54</b>.
If desired, depressions or grip areas <b>70</b> and <b>72</b> can be molded into the body <b>10</b> as shown in FIG. <b>4</b>. The depressions <b>70</b>, <b>72</b> are used to support a user's thumb and forefinger or other fingers to make using the electric toothbrush easier and more comfortable.
Alternatively, the switch <b>50</b> may be only a momentary switch that does not provide a continuous mode of operation. In that case, the consumer is still able to evaluate the quality of the toothbrush before purchasing it. However, in operation the consumer is required to hold the switch <b>50</b> in the closed position while using the toothbrush.
In other embodiments, momentary and continuous switching functions are provided by two separate switches. For example, referring to FIG. 5, a second electric toothbrush B includes a body portion <b>80</b> which has a first end <b>82</b> and a second end <b>84</b>. A head <b>86</b> is attached to or located at the first end <b>82</b> and a handle <b>88</b> is attached to or located at the second end <b>84</b>. A first switch <b>90</b> and a second switch <b>92</b> are mounted in the body portion <b>80</b>. The exemplary head <b>86</b> includes a moving portion <b>94</b> and a static portion <b>96</b>. The moving portion and the static portion contain brushing elements such as bristles <b>98</b> and or massaging tips <b>100</b>.
The first switch <b>90</b> is a momentary switch. For example, the first switch <b>90</b> is a push button that operates in a manner similar to the switch <b>50</b> when the switch <b>50</b> is operated in the momentary mode.
Alternatively, the first switch may be another kind of momentary switch as long as the first switch can be easily actuated while the second toothbrush B is sealed in factory packaging, such as, that depicted in FIG. <b>7</b>.
The second switch <b>92</b> is a non-momentary or continuous mode switch. For example., the second switch <b>92</b> is a slide switch that operates in a manner similar to the switch <b>50</b> when the switch <b>50</b> is operated in the continuous mode.
Alternatively, the second switch <b>92</b> may be any other kind of non-momentary switch, as long as the second switch can not be easily actuated while the toothbrush B is sealed in factory packaging, such as that depicted in FIG.<b>8</b>. In this regard, the factory packaging may be designed to prevent or impede attempts to actuate the second switch.
Referring to FIG. 6, a third toothbrush C also includes a body portion <b>80</b> which has a first end <b>82</b> and a second end <b>84</b>. A head <b>86</b> is located at the first end <b>82</b> and a handle <b>88</b> is attached to the second end <b>84</b>. A third switch <b>110</b> and a fourth switch <b>120</b> are mounted in the elongated body portion <b>80</b>. The head includes a moving portion <b>94</b> and a static portion <b>96</b>. The moving portion and the static portion contain brushing elements such as, bristles <b>98</b> and/or massaging tips <b>100</b>.
The third switch <b>110</b> is a momentary switch. The third switch may be similar to the second switch <b>90</b>. Alternatively, the third switch may be any other kind of momentary switch. For example, the third switch <b>110</b> may be part of an electronic switching circuit comprising a micro-controller circuit (hidden from view) having a first input and an output. The first input senses the state of the third switch button <b>110</b>. The micro-controller controls the state of the output based on sensed input. For example, the micro-controller closes an electronic switch, such as, for example, a FET type transistor, for a predetermined period of time, for example, <b>4</b> seconds, whenever the third switch button <b>110</b> is momentarily depressed. Alternatively, the microprocessor closes an electronic switch whenever, and for as long as, the third switch button <b>110</b> is depressed.
The fourth switch <b>120</b> is a non-momentary push button switch. For example, the fourth switch includes a first switching member <b>122</b> and a second switching member <b>126</b>. Depressing the first switching member <b>122</b> closes a contact thereby powering the toothbrush. Depressing the second switching member <b>126</b> opens the contact, thereby de-powering the toothbrush. If necessary, a toothbrush package may be designed to make it difficult to accidentally or maliciously activate the fourth switch <b>120</b> while the toothbrush is in the package. For example, a blister package may include a dome over the fourth switch <b>120</b> that can not be easily depressed. Alternatively, the blister package is dimensioned so there is generally a large gap between the toothbrush switches and the blister. A recess may be provided in the blister that reaches toward the third switch <b>110</b> thereby permitting momentary trials of the toothbrush.
Alternatively, the fourth switch <b>120</b> is another kind of non-momentary or continuous mode switch. Such switches are known. For example, a non-momentary toggle switch, a push on/push off switch, an alternate acting push button switch or a rotary switch can be used. Alternatively the second switch is part of an electronic switching circuit. For example the micro-controller mentioned above also includes a second input. The second input senses the state of the first switching member <b>122</b>. When the micro-controller senses that the first switching member is momentarily depressed, the micro-controller closes the electronic switch until an off command input is sensed. For example, the electronic switch is closed until the first switching member <b>122</b> is momentarily depressed a second time. Alternatively, a third input is monitored in order to sense the state of the second switching member <b>126</b> and the micro-controller opens the electronic switch when the second switching member is momentarily depressed.
The switching member combinations and micro-controller responses described here are exemplary only. Any set of inputs and responses can be included. For example, a predetermined pattern of switching member actuations or depressions may cause the micro-controller to repeatedly open and close the electronic switch thereby causing the moving portion to move in a pulsed manner. Alternatively, in a battery saving mode the micro-controller may open the electronic switch after a prolonged period of operation even if no off command input is sensed.
A fourth electric toothbrush D is shown in FIG. <b>8</b>. The electric toothbrush D includes an body portion <b>150</b> which has a first end <b>152</b> and a second end <b>154</b>. A head <b>160</b> is attached to the first end <b>152</b> and a handle <b>162</b> is attached to the second end <b>154</b>.
The head <b>160</b> further includes an moving portion or brush head <b>164</b>, a static portion or brush head <b>166</b>, a first end <b>168</b>, and a second end <b>170</b>. As shown in FIG. 8, the moving portion <b>164</b> is located adjacent the second end <b>170</b>. The static portion <b>166</b> is shown located adjacent the first end <b>168</b>. However, it is to be appreciated that the moving portion <b>164</b> could be located adjacent the first end <b>168</b>, and the static portion <b>166</b> could be located adjacent the second end <b>170</b>. Furthermore, the moving portion <b>164</b> could be positioned in the center of the brush head with static portions <b>166</b> on opposite sides of the moving portion <b>164</b> similar to that shown in FIG. <b>3</b>.
In accordance with this embodiment, the moving portion <b>164</b> oscillates about an axis approximately normal to a longitudinal axis <b>172</b> of the elongated body portion <b>150</b>.
The moving portion <b>164</b> can include stiff bristles <b>178</b>. The static portion <b>166</b> can include soft bristles <b>180</b> which are softer than the stiff bristles. The stiff bristles <b>178</b> may be slightly recessed with respect to the soft bristles <b>180</b>. The stiff bristles <b>178</b> aid in the deep cleaning and plaque removal process, while the stationary soft bristles <b>180</b> are softer so as to not damage the gums.
The body portion <b>150</b> further includes an angled shaft <b>190</b>, an upper housing <b>192</b> (not shown), and a lower housing <b>194</b>. The angled shaft <b>190</b> is located between the head <b>160</b> and the handle <b>162</b>. The angled shaft <b>190</b> provides an ergonomic benefit that has not been utilized on a motorized toothbrush.
The body portion <b>150</b> of the fourth toothbrush also includes a hollow portion <b>196</b> which houses a motor <b>200</b>. The hollow portion <b>196</b> is formed between the upper housing <b>192</b> and the lower housing <b>194</b>. The motor <b>200</b> generates motion for driving the moving portion <b>164</b> to rotate, oscillate, or reciprocate. Again, in addition to the motion disclosed herein, any known motion can be provided and still remain within aspects of the present invention. Power is provided to the motor by battery as shown and described for the first, second and third toothbrushes A, B, C.
It should be understood that the forth electric toothbrush D includes any of the switching arrangements discussed above in reference to the first, second and third toothbrushes A, B, C. For clarity, views and discussion of the switches are not repeated here.
The fourth toothbrush D further includes a first gear <b>202</b> which is operatively connected to and powered by the motor <b>200</b>. The first gear <b>202</b> rotates about the longitudinal axis <b>172</b> of the elongated body portion <b>150</b>. A second gear <b>206</b> is operatively connected to the first gear <b>202</b>. The second gear <b>206</b> is approximately normal to the first gear <b>202</b>. The second gear <b>206</b> rotates about an axis approximately normal to the longitudinal axis <b>172</b>. Teeth <b>208</b> of the first gear <b>202</b> mesh with teeth <b>210</b> of the second gear <b>206</b>, thus causing second gear <b>206</b> to rotate when first gear <b>202</b> rotates.
A first swivel arm <b>220</b> is pivotably connected to the second gear <b>206</b> via a pin <b>222</b> or other fastening device. A second swivel arm <b>224</b> is pivotably connected to the first swivel arm <b>220</b> via a pin <b>226</b> or other fastening device. A shaft <b>230</b> is fixedly secured at a shaft first end <b>232</b> to the second swivel arm <b>224</b>. The shaft <b>230</b> is pivotably attached at a shaft second end <b>234</b> to a third swivel arm <b>240</b>. The shaft <b>230</b> is housed within the angled shaft <b>190</b>.
The shaft <b>230</b> is generally parallel with the longitudinal axis <b>172</b>.
A guide spacer <b>250</b> is located within the angled shaft <b>190</b> and surrounds the shaft <b>230</b> adjacent the first end <b>232</b> of the shaft <b>230</b> to minimize lateral movement of the shaft <b>230</b>. A second guide spacer <b>252</b> is located adjacent the second end <b>234</b> of the shaft <b>230</b> to also minimize lateral movement of the shaft <b>230</b>. Guide spacers <b>250</b>, <b>252</b> align the shaft <b>230</b> within the angled shaft <b>190</b> and minimize its movement from side to side within the angled shaft <b>190</b>.
The third swivel arm <b>240</b> has a first end <b>244</b> and a second end <b>246</b>. The third swivel arm <b>240</b> is pivotably connected to the second guide spacer <b>252</b> at the swivel arm first end <b>244</b> via a pin <b>253</b>. The third swivel arm <b>240</b> is connected at the swivel arm second end <b>246</b> to the moving portion <b>164</b> via a pin <b>254</b> or other fastening device. The pin <b>254</b> is connected to a disk <b>256</b> of the moving portion <b>164</b> which is housed within the head <b>160</b>.
As the first gear <b>202</b> rotates, the second gear <b>206</b> is rotated, thus moving the first swivel arm <b>220</b> in a back and forth circular fashion about the second gear <b>206</b> and along the longitudinal axis <b>172</b>. The first swivel arm <b>220</b> also can pivot about the pin <b>222</b>. The first swivel arm <b>220</b> retains its orientation of approximately parallel to the longitudinal axis <b>172</b> of the elongated body portion <b>150</b> during movement. The second swivel arm <b>224</b> pivots with respect to its pin connection <b>226</b> with the first swivel arm <b>220</b> thus allowing the shaft <b>230</b> to oscillate in a back and forth manner toward and away from the brush head with minimal lateral motion.
During operation, the third swivel arm <b>240</b> moves back and forth along the longitudinal axis <b>172</b> of the elongated body portion <b>150</b> along with the shaft <b>230</b>.
The swivel arm <b>240</b> can also pivot or move slightly laterally in a direction perpendicular to the longitudinal axis.
The third swivel arm <b>240</b> has an offset arm <b>260</b> which is offset from the longitudinal axis <b>172</b> and moves the disk <b>256</b> of the moving portion <b>164</b> in a partially rotating or oscillating motion. As the third swivel arm <b>240</b> moves back and forth, the offset arm <b>260</b> moves along an outside edge <b>262</b> of the disk <b>256</b> in a partially rotating or oscillating fashion about an axis which is approximately normal to the longitudinal axis <b>172</b>. This causes the bristles <b>178</b> to also move in a partially rotating or oscillating manner about an axis approximately normal to the longitudinal axis <b>172</b>.
When the third swivel arm <b>240</b> rotates, the disk <b>256</b> also rotates about an axis approximately normal to the elongated body portion longitudinal axis <b>172</b>. The third, swivel arm <b>240</b> also retains its orientation of approximately parallel to the elongated body portion longitudinal axis <b>172</b> during movement.
If desired, raised grip areas (not shown) can be provided which are similar to raised grip areas <b>138</b> and <b>140</b> shown in FIG. <b>9</b> and FIG. 11 for the second preferred embodiment. The raised grip areas can be molded into the lower housing <b>194</b>.
The electric toothbrushes A, B, C, D can be packaged in packaging as shown in FIG. <b>7</b>. As shown for the first toothbrush A, the consumer can depress the button <b>90</b> through the packaging and see its operation while the toothbrush is inside the packaging.
As shown in FIGS. 4, <b>5</b> and <b>6</b> the toothbrushes A, B, C, D also have a battery <b>60</b> with a battery terminal or contact <b>62</b> provided within the hollow portion <b>30</b> of the body portion <b>80</b>. To install the battery <b>60</b> into the hollow portion <b>30</b>, a cover <b>64</b>, <b>134</b> is slid off the end of the handle <b>18</b>, <b>88</b> to expose the hollow portion <b>30</b>. The battery <b>60</b> is inserted, then the cover <b>64</b>, <b>134</b> is slid back on to the housing and snapped into place.
The invention has been described with reference to the preferred embodiments. Obviously, modifications and alterations will occur to others upon a reading and understanding of this specification. For example, still other switch combinations and packages can be applied. The package does not have to be a blister pack. For example, the package may comprise a cardboard box including holes, windows or other provisions for allowing a customer to actuate the momentary switch, and sense and view the operation of the toothbrush. Other head designs, including other moving portions with other patterns of motion and other driving means can be included. The components and features described in relation to each of the exemplary toothbrushes A, B, C, D can be shared and included in other combinations. The invention is intended to include all such modifications and alterations insofar as they come within the scope of the appended claims or the equivalents thereof.
Contents4
9 sheets
Sheet 1 Sheet 2 Sheet 3 Sheet 4 Sheet 5 Sheet 6 Sheet 7 Sheet 8 Sheet 9
Every citation, both ways
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Priority claims18
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46 transactions on the USPTO file
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Numbers
- Publication, DOCDB
- 6564940
- Publication, EPODOC
- US6564940
- Application
- 9861834
- Application, DOCDB
- 86183401
- Application, EPODOC
- US20010861834
Titles
- English
- Electric toothbrush
Patent term adjustment
- Applicant delay
- −156 days
- Net adjustment
- 0 days
Classification
- CPC, 9
- A61C17/22
- A61C17/221
- A61C17/26
- A61C17/34
- A61C17/3436
- A61C17/349
- A61C19/02
- A61C2204/002
- B29L2031/425
- IPC, 3
- A61C17 22
- A61C17 26
- A61C17 34
- USPC, 5
- 206362200
- 015022100
- 015028000
- 200318200
- 206470000